FRP混凝土体系在不同环境条件下的粘结性能研究进展

R. Al-Safy
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引用次数: 0

摘要

纤维增强聚合物(FRP)加固混凝土结构是修复和修复混凝土构件最常用的技术之一,因为FRP的性能优于钢板等其他传统材料。FRP混凝土系统所需的性能与暴露在不同环境条件下的FRP和混凝土基底之间的适当结合有关。在当前的论文中,进行了一项综述,以强调其他研究人员关于在剪切张力下用FRP加固并暴露于基于温度的条件下的混凝土构件的粘结性能以及与环境条件的比较的报告最多的工作。目前的综述集中在使用两种不同的粘合剂(环氧基粘合剂(EBA)和水泥基粘合剂(CBA))进行加固的两种不同安装技术(外部粘合(ES)和近表面安装(NSM))的玻璃钢/混凝土系统的工作上。还对在环境条件和基于温度的条件下采用两种特定的粘结试验程序(附着力和单搭接剪切试验)进行了深入审查,以澄清与每种试验相关的优点和缺点。还强调了其他人在对不同的FRP/混凝土系统进行粘结试验方法时报告的一些发现,以解决这方面的知识差距和进一步研究的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A REVIEW ON BOND PERFORMANCE OF FRP-CONCRETE SYSTEM AT VARIOUS ENVIRONMENTAL CONDITIONS
Strengthening concrete structures with Fibre Reinforced Polymer (FRP) is one of the most commonly used technique to repair and rehabilitate concrete members due to the advanced properties of FRP over other conventional materials such as steel plates. The required performance of FRP-concrete system is linked to achieve proper bond between FRP and concrete substrates that as exposed to different environmental conditions. In the current paper, a review is conducted to highlight the most reported work by other researchers regarding the bond behavior of concrete members that strengthened with FRP in shear-tension and exposed to temperature-based conditions and compared with ambient conditions. The current review focused on the conducted work on FRP/concrete system that strengthened with two different installation techniques (externally bonding (ES) and near–Surface mounted (NSM)) using two different bonding agents (epoxy-based adhesive (EBA) and cement-based adhesive (CBA)) with and without modification. The adoption of two specific bond test procedures (adhesion and single lap shear tests) at ambient conditions and temperature-based conditions was also reviewed intensively to clarify the advantages and drawbacks associated with each test.  Some reported findings by others in conducting bond test methods for different FRP/concrete systems were highlighted as well to address the gap in knowledge and the need for further research in this regard.
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来源期刊
CiteScore
0.70
自引率
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发文量
74
审稿时长
50 weeks
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